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T130X Reinforced Ultrafine Mill

T130X reinforced ultrafine mill is to strengthen SBM engineers on the basis of market research, statistical analysis of a large number of domestic mill use of the user and recommendations, based on the MTM overpressure trapezium mill on the innovative design of the new mill. The aircraft inherited and optimized MTM Trapezium Mill overpressure structural characteristics, they also formed its own unique characteristics. T130X reinforced ultrafine mill mainly by the host, reducer, analysis, maintenance platforms, fans, bypass powder collector, cabinet and other components. Auxiliary of jaw crusher, bucket elevator, electromagnetic vibrating feeder, storage silos and other components. Excellent aircraft production to meet customer demand for the 200-33??m (80-425Mesh) fine powder.

Features of T130X reinforced ultrafine mill

1. Precision high strength: the base body is connected to the soft, to avoid the influence of vibration of the grinding chamber and the analyzer body, and improve the analysis accuracy. High strength, vibration produced by the cracking of ductile iron base, good impact resistance.

2. Stable and reliable security: full use of the advantages of the German-made imitation of Flender reducer to improve the stability of the device. Host and reducer elastic sleeve pin coupling, to improve the reliability of the device. Reducer and motor with V-belt transmission of power, which will help overload and safer.

3. High yield energy consumption: analysis using high-density blade machine, air resistance is reduced, increasing the powder fineness and yield. Frequency control analysis machine, the regulation is more accurate, more energy-efficient, high degree of automation.

4. Powder collector efficiency: bypass powder collector resistance using the same program, to avoid two different powder collector output and two powder collector dust discharge port and discharge port in the same straight line, to facilitate centralized collection of micronized particles improve the collection efficiency of the powder.